Depth-sensing indentation experiments are a very important tool for estimating mechanical properties of modern materials. A review of various aspects of contact problems that used as the theoretical basis for interpretation of depth-sensing nanoindentation experiments is presented. Usually, analytical treatment of the indentation tests is based on analysis of the slopes of the force–displacement curves according to the non-adhesive Hertz contact theory. However, molecular adhesion is crucially important for many physical processes at the micro/nano-scales. Here, depth-sensing indentation techniques are reviewed and analyzed using the recent results obtained for adhesive contact problems. Fundamental relations for adhesive nanoindentation te...
The miniaturization of devices and the advances in nanotechnol.-enabled products has led to the requ...
Depth sensing indentations are indentation experiments in which the load and the displace-ment of a ...
Characterization of the mechanical and surface properties of soft materials is important in a number...
Depth-sensing indentation experiments are a very important tool for estimating mechanical properties...
An overview of development of indentation techniques and connections between contact mechanics and m...
Using the connection between depth-sensing indentation by spherical indenters and mechanics of adhes...
Fundamental relations for depth-sensing nanoindentation are derived for indenters of various shapes ...
The Hertz type contact problems and the analytical treatment of depth-sensing nanoindentation are un...
Summary The JKR and the DMT theories of adhesive contact are developed to describe contact between a...
The JKR and the DMT theories of adhesive contact are developed to describe contact between an indent...
The present work proposes an extension of Oliver-Pharr analysis [J. Mater. Res. 7, 1564 (1992)] of u...
Classical methods of material testing become extremely complicated or impossible at micro-/nanoscale...
Classical methods of material testing become extremely complicated or impossible at micro-/nanoscale...
Connections between the Hertz-type contact problems and depth-sensing indentation of materials are s...
Nanoindentation techniques provide a unique opportunity to obtain mechanical properties of materials...
The miniaturization of devices and the advances in nanotechnol.-enabled products has led to the requ...
Depth sensing indentations are indentation experiments in which the load and the displace-ment of a ...
Characterization of the mechanical and surface properties of soft materials is important in a number...
Depth-sensing indentation experiments are a very important tool for estimating mechanical properties...
An overview of development of indentation techniques and connections between contact mechanics and m...
Using the connection between depth-sensing indentation by spherical indenters and mechanics of adhes...
Fundamental relations for depth-sensing nanoindentation are derived for indenters of various shapes ...
The Hertz type contact problems and the analytical treatment of depth-sensing nanoindentation are un...
Summary The JKR and the DMT theories of adhesive contact are developed to describe contact between a...
The JKR and the DMT theories of adhesive contact are developed to describe contact between an indent...
The present work proposes an extension of Oliver-Pharr analysis [J. Mater. Res. 7, 1564 (1992)] of u...
Classical methods of material testing become extremely complicated or impossible at micro-/nanoscale...
Classical methods of material testing become extremely complicated or impossible at micro-/nanoscale...
Connections between the Hertz-type contact problems and depth-sensing indentation of materials are s...
Nanoindentation techniques provide a unique opportunity to obtain mechanical properties of materials...
The miniaturization of devices and the advances in nanotechnol.-enabled products has led to the requ...
Depth sensing indentations are indentation experiments in which the load and the displace-ment of a ...
Characterization of the mechanical and surface properties of soft materials is important in a number...